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磷酸烯醇丙酮酸 - 葡萄糖磷酸转移酶系统的IIIGlc在大肠杆菌诱导物排除中的作用

Role of IIIGlc of the phosphoenolpyruvate-glucose phosphotransferase system in inducer exclusion in Escherichia coli.

作者信息

Nelson S O, Lengeler J, Postma P W

出版信息

J Bacteriol. 1984 Oct;160(1):360-4. doi: 10.1128/jb.160.1.360-364.1984.

Abstract

The phosphoenolpyruvate-D-glucose phosphotransferase system of Enterobacteriaceae is thought to regulate the synthesis and activity of a number of catabolite uptake systems, including those for maltose, lactose, and glycerol, via the phosphorylation state of one of its components, IIIGlc. We have investigated the proposal by Kornberg and co-workers (FEBS Lett. 117(Suppl.):K28-K36, 1980) that not IIIGlc, but an unknown protein, the product of the iex gene, is responsible for the exclusion of the above-mentioned compounds from the cell. The iex mutant HK738 of Escherichia coli contains normal amounts of IIIGlc as measured by specific antibodies, in contrast to crr mutants that lack IIIGlc. The IIIGlc of the iex strain functions normally in glucose and methyl alpha-glucoside transport, and the specific activity in in vitro phosphorylation is approximately 60% of that of the parent. The IIIGlc activity of the iex strain is, however, heat labile, in contrast to the parental IIIGlc, suggesting that the mutant contains an altered IIIGlc. This is supported by the observation that IIIGlc from the iex strain cannot bind to the lactose carrier. Thus it cannot inhibit the carrier, and this explains why the uptake of non-phosphotransferase system compounds in an iex strain is resistant to phosphotransferase system sugars. The introduction of a plasmid containing a wild-type crr+ allele into the iex strain restores the iex phenotype to that of the iex+ parent. The IIIGlc produced from the plasmid in the iex strain is heat stable and binds normally to the lactose carrier. These results lead to the conclusion that the iex mutation is most likely allelic with crr and results in an altered, temperature-sensitive IIIGlc that is still able to function D-glucose and methyl alpha-glucoside uptake and phosphorylation and in the activation of adenylate cyclase, but is unable to bind to and inhibit the lactose carrier.

摘要

肠杆菌科的磷酸烯醇丙酮酸 - D - 葡萄糖磷酸转移酶系统被认为通过其一个组分IIIGlc的磷酸化状态来调节许多分解代谢物摄取系统的合成和活性,这些系统包括麦芽糖、乳糖和甘油的摄取系统。我们研究了科恩伯格及其同事提出的建议(《欧洲生物化学学会联合会快报》117(增刊):K28 - K36,1980),即不是IIIGlc,而是一种未知蛋白质,即iex基因的产物,负责将上述化合物排除在细胞之外。与缺乏IIIGlc的crr突变体相比,通过特异性抗体测量,大肠杆菌的iex突变体HK738含有正常量的IIIGlc。iex菌株的IIIGlc在葡萄糖和α - 甲基葡萄糖苷转运中功能正常,体外磷酸化的比活性约为亲本的60%。然而,与亲本IIIGlc相比,iex菌株的IIIGlc活性对热不稳定,这表明突变体含有改变的IIIGlc。这一观点得到了以下观察结果的支持:iex菌株的IIIGlc不能与乳糖载体结合。因此它不能抑制载体,这就解释了为什么iex菌株中非磷酸转移酶系统化合物的摄取对磷酸转移酶系统糖类具有抗性。将含有野生型crr + 等位基因的质粒导入iex菌株可使iex表型恢复为iex + 亲本的表型。iex菌株中由质粒产生的IIIGlc对热稳定,并且能正常地与乳糖载体结合。这些结果得出结论,iex突变很可能与crr等位,导致一种改变的、温度敏感的IIIGlc,它仍然能够在葡萄糖和α - 甲基葡萄糖苷的摄取和磷酸化以及腺苷酸环化酶的激活中发挥作用,但不能与乳糖载体结合并抑制它。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b6a8/214725/797f9e97bcfa/jbacter00227-0372-a.jpg

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